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Cosmology with a supersymmetric local B - L model

  • Pusan National University

Research output: Contribution to journalJournal articlepeer-review

Abstract

We propose a minimal gauged U(1)B-L extension of the minimal supersymmetric Standard Model (MSSM) which resolves the cosmological moduli problem via thermal inflation, and realizes late-time Affleck-Dine leptogensis so as to generate the right amount of baryon asymmetry at the end of thermal inflation. The present relic density of dark matter can be explained by sneutrinos, MSSM neutralinos, axinos, or axions. Cosmic strings from U(1)B-L breaking are very thick, and so the expected stochastic gravitational wave background from cosmic string loops has a spectrum different from the one in the conventional Abelian-Higgs model, as would be distinguishable at least at LISA and DECIGO. The characteristic spectrum is due to a flat potential, and may be regarded as a hint of supersymmetry. Combined with the resolution of moduli problem, the expected signal of gravitational waves constrains the U(1)B-L breaking scale to be O(1012-13) GeV. Interestingly, our model provides a natural possibility for explaining the observed ultra-high-energy cosmic rays thanks to the fact that the core width of strings in our scenario is very large, allowing a large enhancement of particle emissions from the cusps of string loops. Condensation of LHu flat-direction inside of string cores arises inevitably and can also be the main source of the ultra-high-energy cosmic rays accompanied by ultra-high-energy lightest supersymmetric particles.

Original languageEnglish
Article number016
JournalJournal of Cosmology and Astroparticle Physics
Volume2023
Issue number11
DOIs
StatePublished - 2023.11.1

Keywords

  • cosmological phase transitions
  • gravitational waves / sources
  • physics of the early universe
  • supersymmetry and cosmology

Quacquarelli Symonds(QS) Subject Topics

  • Physics & Astronomy

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